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TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy

Adenosine triphosphate (ATP), as a key substance for regulating tumor progression in the tumor microenvironemnt (TME), is an emerging target for tumor theranostics. Herein, we report a minimalist but versatile nanoplatform with simultaneously TME-responsive drug release, TME-enhanced imaging, ATP-de...

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Autores principales: Luo, Yuanli, Qiao, Bin, Zhang, Ping, Yang, Chao, Cao, Jin, Yuan, Xun, Ran, Haitao, Wang, Zhigang, Hao, Lan, Cao, Yang, Ren, Jianli, Zhou, Zhiyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7295044/
https://www.ncbi.nlm.nih.gov/pubmed/32550917
http://dx.doi.org/10.7150/thno.44569
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author Luo, Yuanli
Qiao, Bin
Zhang, Ping
Yang, Chao
Cao, Jin
Yuan, Xun
Ran, Haitao
Wang, Zhigang
Hao, Lan
Cao, Yang
Ren, Jianli
Zhou, Zhiyi
author_facet Luo, Yuanli
Qiao, Bin
Zhang, Ping
Yang, Chao
Cao, Jin
Yuan, Xun
Ran, Haitao
Wang, Zhigang
Hao, Lan
Cao, Yang
Ren, Jianli
Zhou, Zhiyi
author_sort Luo, Yuanli
collection PubMed
description Adenosine triphosphate (ATP), as a key substance for regulating tumor progression in the tumor microenvironemnt (TME), is an emerging target for tumor theranostics. Herein, we report a minimalist but versatile nanoplatform with simultaneously TME-responsive drug release, TME-enhanced imaging, ATP-depletion sensitized chemotherapy and photothermal therapy for intelligent tumor theranostics. Methods: The Fe(3+) and tannic acid (TA) coordination were self-deposited on doxorubicin (Dox) in a facile method to prepare Dox-encapsulated nanoparticles (DFTNPs). Results: When irradiated by a near infrared laser, the DFTNPs could elevate the temperature in the tumor region efficiently. Subsequently, the Dox could be released by the disassembly of Fe(3+)/TA in the TME to initiate chemotherapy. Particularly, the smart nanoagent not only enabled ATP-depletion and enhanced the therapeutic effect of chemotherapy, but also acted as photothermal transduction agent for photothermal therapy. Moreover, the nanoagent also acted as T(1)-weighted MR imaging,photoacoustic imaging and photothermal imaging contrast agent. The mice treated by DFTNPs plus laser showed a complete tumor eradication in 14d observation. Conclusion: This as-prepared versatile nanoplatform offers new insights toward the application of smart nanoagents for improved tumor theranostics.
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spelling pubmed-72950442020-06-17 TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy Luo, Yuanli Qiao, Bin Zhang, Ping Yang, Chao Cao, Jin Yuan, Xun Ran, Haitao Wang, Zhigang Hao, Lan Cao, Yang Ren, Jianli Zhou, Zhiyi Theranostics Research Paper Adenosine triphosphate (ATP), as a key substance for regulating tumor progression in the tumor microenvironemnt (TME), is an emerging target for tumor theranostics. Herein, we report a minimalist but versatile nanoplatform with simultaneously TME-responsive drug release, TME-enhanced imaging, ATP-depletion sensitized chemotherapy and photothermal therapy for intelligent tumor theranostics. Methods: The Fe(3+) and tannic acid (TA) coordination were self-deposited on doxorubicin (Dox) in a facile method to prepare Dox-encapsulated nanoparticles (DFTNPs). Results: When irradiated by a near infrared laser, the DFTNPs could elevate the temperature in the tumor region efficiently. Subsequently, the Dox could be released by the disassembly of Fe(3+)/TA in the TME to initiate chemotherapy. Particularly, the smart nanoagent not only enabled ATP-depletion and enhanced the therapeutic effect of chemotherapy, but also acted as photothermal transduction agent for photothermal therapy. Moreover, the nanoagent also acted as T(1)-weighted MR imaging,photoacoustic imaging and photothermal imaging contrast agent. The mice treated by DFTNPs plus laser showed a complete tumor eradication in 14d observation. Conclusion: This as-prepared versatile nanoplatform offers new insights toward the application of smart nanoagents for improved tumor theranostics. Ivyspring International Publisher 2020-05-25 /pmc/articles/PMC7295044/ /pubmed/32550917 http://dx.doi.org/10.7150/thno.44569 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Luo, Yuanli
Qiao, Bin
Zhang, Ping
Yang, Chao
Cao, Jin
Yuan, Xun
Ran, Haitao
Wang, Zhigang
Hao, Lan
Cao, Yang
Ren, Jianli
Zhou, Zhiyi
TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title_full TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title_fullStr TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title_full_unstemmed TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title_short TME-activatable theranostic nanoplatform with ATP burning capability for tumor sensitization and synergistic therapy
title_sort tme-activatable theranostic nanoplatform with atp burning capability for tumor sensitization and synergistic therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7295044/
https://www.ncbi.nlm.nih.gov/pubmed/32550917
http://dx.doi.org/10.7150/thno.44569
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